WO2016176312A1 - Coupleur à raccord rapide comportant un arrêt d'évacuation - Google Patents

Coupleur à raccord rapide comportant un arrêt d'évacuation Download PDF

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Publication number
WO2016176312A1
WO2016176312A1 PCT/US2016/029538 US2016029538W WO2016176312A1 WO 2016176312 A1 WO2016176312 A1 WO 2016176312A1 US 2016029538 W US2016029538 W US 2016029538W WO 2016176312 A1 WO2016176312 A1 WO 2016176312A1
Authority
WO
WIPO (PCT)
Prior art keywords
probe
coupler
pawl
stop assembly
lever
Prior art date
Application number
PCT/US2016/029538
Other languages
English (en)
Inventor
Howard M. Konishi
Original Assignee
Engineered Controls International, Llc
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Engineered Controls International, Llc filed Critical Engineered Controls International, Llc
Priority to EP16722473.2A priority Critical patent/EP3289269B1/fr
Priority to CN201680025408.1A priority patent/CN107548444B/zh
Priority to ES16722473T priority patent/ES2903105T3/es
Publication of WO2016176312A1 publication Critical patent/WO2016176312A1/fr
Priority to HK18106551.8A priority patent/HK1247269B/zh

Links

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16LPIPES; JOINTS OR FITTINGS FOR PIPES; SUPPORTS FOR PIPES, CABLES OR PROTECTIVE TUBING; MEANS FOR THERMAL INSULATION IN GENERAL
    • F16L37/00Couplings of the quick-acting type
    • F16L37/08Couplings of the quick-acting type in which the connection between abutting or axially overlapping ends is maintained by locking members
    • F16L37/12Couplings of the quick-acting type in which the connection between abutting or axially overlapping ends is maintained by locking members using hooks, pawls or other movable or insertable locking members
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16LPIPES; JOINTS OR FITTINGS FOR PIPES; SUPPORTS FOR PIPES, CABLES OR PROTECTIVE TUBING; MEANS FOR THERMAL INSULATION IN GENERAL
    • F16L37/00Couplings of the quick-acting type
    • F16L37/08Couplings of the quick-acting type in which the connection between abutting or axially overlapping ends is maintained by locking members
    • F16L37/12Couplings of the quick-acting type in which the connection between abutting or axially overlapping ends is maintained by locking members using hooks, pawls or other movable or insertable locking members
    • F16L37/18Joints tightened by eccentrics or rotatable cams
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16LPIPES; JOINTS OR FITTINGS FOR PIPES; SUPPORTS FOR PIPES, CABLES OR PROTECTIVE TUBING; MEANS FOR THERMAL INSULATION IN GENERAL
    • F16L37/00Couplings of the quick-acting type
    • F16L37/28Couplings of the quick-acting type with fluid cut-off means
    • F16L37/30Couplings of the quick-acting type with fluid cut-off means with fluid cut-off means in each of two pipe-end fittings
    • F16L37/32Couplings of the quick-acting type with fluid cut-off means with fluid cut-off means in each of two pipe-end fittings at least one of two lift valves being opened automatically when the coupling is applied
    • F16L37/36Couplings of the quick-acting type with fluid cut-off means with fluid cut-off means in each of two pipe-end fittings at least one of two lift valves being opened automatically when the coupling is applied with two lift valves being actuated to initiate the flow through the coupling after the two coupling parts are locked against withdrawal
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16LPIPES; JOINTS OR FITTINGS FOR PIPES; SUPPORTS FOR PIPES, CABLES OR PROTECTIVE TUBING; MEANS FOR THERMAL INSULATION IN GENERAL
    • F16L55/00Devices or appurtenances for use in, or in connection with, pipes or pipe systems
    • F16L55/07Arrangement or mounting of devices, e.g. valves, for venting or aerating or draining
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16LPIPES; JOINTS OR FITTINGS FOR PIPES; SUPPORTS FOR PIPES, CABLES OR PROTECTIVE TUBING; MEANS FOR THERMAL INSULATION IN GENERAL
    • F16L2201/00Special arrangements for pipe couplings
    • F16L2201/40Special arrangements for pipe couplings for special environments

Definitions

  • This disclosure generally relates to a rapid-connect coupler configured to deliver cold fluid to a receptacle (e.g., a fuel tank).
  • a receptacle e.g., a fuel tank
  • An embodiment of the present disclosure provides a rapid-connect coupler including a vent stop assembly that includes a release lever, release spring, latch pawl, latch spring, catch, and reset cam.
  • the latch pawl may be configured to engage with a probe flange of a probe to implement a hard stop of the probe translating within the rapid-connect coupler.
  • the catch may be configured to hold the latch pawl in an "up" position.
  • a rapid-connect coupler including a housing body, a probe, a handle assembly, and a stop vent assembly.
  • the probe may be configured to translate within the housing body.
  • the handle assembly may be coupled to the housing body and the probe, and the handle assembly may be configured to cause the probe to translate within the housing body.
  • the stop vent assembly may be configured to enable the rapid-connect coupler to transition from a decoupled configuration to a coupled configuration without a hard stop, and configured to enable the rapid-connect coupler to transition to a venting configuration between transitioning from the decoupled configuration to the coupled configuration.
  • the rapid-connect coupler may further include a vent stop apparatus configured to allow a coupling head of the rapid-connect coupler to transition from a decoupled configuration to a coupled configuration without obstruction.
  • the vent stop apparatus may further be configured to provide a hard-stop at a venting position as the coupling head transitions from the coupled configuration to the decoupled configuration.
  • a rapid connect coupler consistent with the present disclosure may include a housing, a probe configured to translate within the housing, retaining obj ects, a slideable sleeve configured to cause radial translation of the retaining objects, a poppet and a valve seat located inside of the probe, the poppet configured to translate with respect to the probe, a handle assembly configured to cause the probe to translate within the housing body, a stop assembly configured to selectively arrest the translation of the probe.
  • the stop assembly can include: a pawl configured to occupy both an active position and an inactive position, wherein the inactive position arrests the translation of the probe; a catch fixed to the housing and configured to hold the probe in the inactive position; a lever configured to engage the pawl; a spring fixed to both the housing and the lever and configured to bias the pawl to the inactive position via the lever; and a cam configured to disengage the pawl from the catch and cause the pawl to occupy the active position.
  • a rapid connect coupler consistent with the present disclosure includes a housing; a probe configured to translate in a longitudinal direction within the housing; a handle assembly configured to cause the probe to translate within the housing, wherein the handle assembly is movable between a first position corresponding to a decoupled position where the fluid holding tank is disconnected from the receptacle and a second position corresponding to a coupled position where the fluid holding tank is connected to the receptacle and a third position corresponding to a venting position where the fluid holding tank is connected to the receptacle and venting of fluid is enabled; and a stop assembly configured to selectively arrest the translation of the probe in a first translation direction when the handle assembly is moved from the second position to the third position.
  • a rapid connect coupler consistent with the present disclosure includes a housing body; a probe configured to translate within the housing body; a plurality of retaining obj ects; a slidable sleeve configured to cause radial translation of the plurality of retaining objects with respect to the housing body; a poppet and a valve seat located inside of the probe, the poppet configured to translate with respect to the probe; a handle assembly configured to cause the probe to translate within the housing body; and a stop assembly configured to selectively arrest the translation of the probe, the stop assembly including: a pawl configured to occupy both an active position and an inactive position, wherein the inactive position arrests the translation of the probe; a catch fixed to the housing body and configured to hold the probe in the inactive position; a lever configured to engage the pawl; a spring fixed to both the housing body and the lever and configured to bias the pawl to the inactive position via the lever; and a cam configured to disengage the pawl
  • Figure 1 is a top view of a rapid-connect coupler, depicting three handle positions.
  • Figure 2 is a top cross-sectional view of the rapid-connect coupler of Figure 1.
  • Figure 3 is a top cross-sectional view of the rapid-connect coupler of Figure 1 with the handles in a second position.
  • Figure 4 is a side cross-sectional view of the rapid-connect coupler of Figure 1 and an exemplary receptacle.
  • Figure 5 is a cross-sectional side view of the rapid-connect coupler of Figure 1 along 5-5 of Figure 1 with the handles in a first position.
  • Figure 6 is a cross-sectional side view similar to Figure 5 with the handles in the second position.
  • Figure 7 is a cross-sectional side view similar to Figure 5 with the handles in a third position and with a stop in a first position.
  • Figure 8 is a cross-sectional side view similar to Figure 7 with the stop in a second position.
  • Figure 9 is a cross-sectional view of a coupling head of the rapid-connect coupler of Figure 1 showing details of retaining balls.
  • Fig. 1 is a top view of a rapid-connect coupler 100 having a coupler head section 101 and a coupler body section 102.
  • the components of rapid-connect coupler 100 may be considered to be part of a first structure and/or a second structure, wherein component(s) of the first structure and the second structure are configured to move relative to each other as further described herein.
  • the first structure may include a sleeve 205, one or more drive pins 210, and a probe assembly 215, which includes a coupling end 220.
  • the one or more drive pins 210 extend though a respective drive slot 140 defined in a ball cage 225.
  • the drive pins 210 link the sleeve 205 to the probe assembly 215.
  • the drive pins 210 are fixed to the probe assembly 215 via opposing retaining rings 655a and 655b. As shown In Figure 2, the retaining rings 655a and 655b compress against an outer circumference of the probe assembly 215.
  • the second structure includes the ball cage 225 defining a coupling orifice 230 and including one or more balls 245.
  • a first poppet assembly 235 resides within coupling orifice 230 and may be biased by a poppet assembly spring 280.
  • the first poppet assembly 235 further comprises a retainer 240 and a seal assembly 260.
  • the second structure may further include one or more guide pins 250, and a housing barrel 255.
  • the one or more guide pins 250 center probe assembly 215 along the longitudinal central axis of housing barrel 255.
  • the second structure, or portions thereof may be removable and configured for easy and swift removal and replacement, which may be required due to damage or maintenance needs. Certain portions of the design described herein are similar to that disclosed in commonly owned U.S. Patent No. 9, 194,524, the contents of which are incorporated herein by reference in their entirety.
  • Rapid-connect coupler 100 further includes a first handle 130A and a second handle 130B.
  • Fig. 1 illustrates the positions of the first handle 130A and the second handle 130B in three different configurations of rapid-connect coupler 100: (1) configuration A corresponds to a decoupled state of rapid-connect coupler 100; (2) configuration B corresponds to a coupled state of rapid-connect coupler 100; and (3) configuration C corresponds to a semi-coupled state of rapid-connect coupler 100 that enables venting.
  • a vent stop assembly is configured to provide a hard stop in configuration C.
  • Fig. 2 is a top cross-sectional view of the rapid-connect coupler 100 in configuration A when handles 130A and 130B are pulled all or substantially all the way back away from coupler head section 101.
  • Handles 13 OA and 130B are rotatably coupled to housing barrel 255 via a first barrel flange 270A and a second barrel flange 270B.
  • a first link assembly 275A and a second link assembly 275B are rotatably attached to first handle 130A and second handle 130B, respectively.
  • the first link assembly 275A and second link assembly 275B are also rotatably attached to probe assembly 215. More specifically, one end of each link assembly 275 may be fixed to a handle 130.
  • each link assembly 275 may be fixed the probe assembly 215 via a base 605.
  • the base 605 is directly attached to the probe assembly 215.
  • the base 605 is fixed to the probe assembly 215 via a compressive force delivered by a ring 610.
  • the first structure longitudinally translates relative to the second structure along the central axis X. More specifically, rotation of handles 130A and 13 OB from their positions in configuration A to their positions in configuration B delivers longitudinal force to probe assembly 215, via link assemblies 275. This longitudinal force opposes a counter-biasing force of probe spring 265, enabling longitudinal translation of probe assembly 215 in housing barrel 255.
  • Sleeve 205 longitudinally translates with probe assembly 215 by virtue of drive pins 210. In Fig. 2, sleeve 205 is longitudinally retracted with respect to ball cage 225. In Fig.
  • sleeve 205 is longitudinally extended with respect to ball cage 225.
  • One end of probe spring 265 may rest on spring seat 625, which is fixed to flange 290.
  • Flange 290 is described in detail below.
  • the other end of probe spring 265 may rest against spring stop 620, which is fixed to housing barrel 255 via pins, screws, or bolts 615.
  • Fig. 4 is a side cross-sectional view of a rapid-connect coupler 100 and a fueling receptacle 400 aligned along a central axis X.
  • the fueling receptacle 400 comprises a coupling body 410, which includes a lip 420, and a recess 425 behind lip 420.
  • the coupling body 410 defines a second poppet orifice 430.
  • a second poppet assembly 440 is disposed within second poppet orifice 430 and is biased closed by spring 450.
  • Rapid-connect coupler 100 is configured to couple with fueling receptacle 400.
  • coupling body 410 slides into first coupling orifice 230, enabling retainer 240 to slide into second poppet orifice 230.
  • spring seal 260 seals against an inner diameter of coupling body 410.
  • first poppet assembly 235 bears against second poppet assembly 440. Force from second poppet assembly 440 opposes counter-biasing force of spring 280, enabling first poppet assembly 235 to longitudinally translate until reaching a hard stop 650 (labeled in Fig. 9).
  • sealing surface 640 of poppet assembly 235 retreats from valve seat 645 of retainer 240. Fluid may now flow from coupling end 220, through probe assembly 215, and into second poppet orifice 430.
  • first poppet assembly 235 bears against hard stop 650 (labeled in Fig. 9), first poppet assembly 235 transfers enhanced longitudinal force to second poppet assembly 440.
  • the enhanced force opposes a counter-biasing force of spring 450 and enables second poppet assembly 440 to longitudinally retreat from a valve seat (not shown).
  • second poppet assembly 440 may operate according to the same general principles as first poppet assembly 235.
  • the second poppet assembly 440 and the first poppet assembly 235 may be operable to enable fluid flow from the rapid-connect coupler 100 into coupling body 410.
  • seal 260 seals against the interior circumference of the coupling body 410 within the second poppet orifice 430.
  • the seal assembly 260 is a two piece seal including an energizing spring.
  • fluid e.g. liquid natural gas
  • fluid may vent from rapid-connect coupler 100 as the connection with fueling receptacle 400 is broken.
  • the fluid vents through slots 635 in receptacle 400 and slots 630 in coupler 100.
  • venting occurs when seal 260 longitudinally retreats past slots 635, thus exposing second poppet orifice 430 to ambient atmosphere.
  • the rapid-connect coupler 100 applies a positive stop in configuration C, which enables the rapid- connect coupler 100 to vent before it is fully disengaged from fueling receptacle 400.
  • Fig. 7 shows configuration C of rapid-connect coupler 100.
  • probe assembly 215 hard stops against edge 523.
  • sleeve 205 covers the balls 245 (and more specifically, the ball slots 910).
  • sleeve 205 presses balls 245 into groove 425.
  • Receptacle 400 cannot detach from coupler 100 in this position.
  • the poppet assemblies no longer touch and therefore close.
  • seal 260 has longitudinally retreated behind venting slots 635, enabling venting of fluid from orifice 430 to ambient via venting slots 635 and 630.
  • a user may actuate the vent stop assembly to fully retract probe assembly 215 (and therefore sleeve 205). Now lip 420 exerts a radial force on balls 245, causing balls 245 to radially translate and disengage from groove 425. Once this has occurred, the user may retract coupler 100 from receptacle 400.
  • the balls 245 are spherical, made of a metal, and sized for an interference fit within slots 910. The spherical shape of the balls 245 advantageously release from grooves 425 more efficiently than other shapes. Also, spherical balls 245 tend to release ice efficiently.
  • rapid-connect coupler 100 is configured to generate a positive stop at configuration C via a vent stop assembly.
  • Fig. 5 depicts the vent stop assembly and also shows the rapid-connect coupler 100 in the decoupled state corresponding to configuration A.
  • the vent stop assembly includes a release lever 501, a lever spring 502, a lever spring connector 503, a latch pawl 520, a catch 510, a latch pin 522, and reset cam 530.
  • Release lever 501, lever spring connector 503, catch 510, and latch pawl 520 may be attached, either directly or indirectly, to housing barrel 255, while reset cam 530 may be attached to probe assembly 215.
  • one end of the lever spring 502 directly attaches to release lever 501 and another end of lever spring 502 directly attaches to lever spring connector 503, which is fixed to housing barrel 255.
  • Latch pawl 520 is rotatably mounted on rod 521 and is rotatable between a "down" position where its front edge 523 engages with probe flange 290 to provide the hard stop that arrests translation of probe assembly 215 at configuration C, as shown in Fig. 7, and an "up" position where latch pawl 520 is clear of probe flange 290, as shown in Fig. 5.
  • reset cam 530 acts to reset latch pawl 520 from its "up” position to the "down” position when handles 130A, 130B are moved from configuration A to configuration B.
  • latch pawl 520 is biased down towards probe assembly 215 due to the downward biasing force of release lever 501 and/or lever spring 502.
  • latch pawl 520 is retained in the "up” position by frictional forces between latch pawl 520 and catch 510.
  • frictional forces provide an upward holding force that may be greater than, or equal to, the downward biasing forces being exerted on the latch pawl 520 by one or more of the rod 521 and release lever 501.
  • Latch pawl 520 does not engage with probe flange 290 while latch pawl 520 is being held in this "up" position by catch 510.
  • latch pin 522 is fixed to latch pawl 520 and may be integrally formed with latch pawl 520.
  • Latch pin 522 transversely extends beyond the outer sides of latch pawl 520.
  • latch pin 522 extends into and out of the page. This enables latch pin 522 to engage both sides of catch 510 (Fig. 1 shows the two sides of catch 510) without contacting latch pawl 520 directly. This advantageously reduces wear on latch pawl 520 and clears room for lever 501 to engage latch pawl.
  • latch pawl 520 may be configured to include a top opening (not illustrated) having latch pin 522 extending across it such that latch pawl 520 may be configured to engage latch pin 522 through the top opening without contacting latch pawl 520 directly.
  • latch pawl 520 By configuring catch 510 to hold latch pawl 520 in the "up" position, the front edge 523 of latch pawl 520 does not contact probe flange 290 as probe assembly 215 translates forward towards coupler head section 101 as rapid-connect coupler 100 transitions from configuration A (i.e., the decoupled state) to configuration B (i.e., coupled state).
  • configuration A i.e., the decoupled state
  • configuration B i.e., coupled state
  • the angled shape of latch pawl 520 also aids in preventing a hard stop of probe assembly 215 during such movement.
  • Reset cam 530 translates with probe assembly 215 and begins engagement with latch pawl 520 as rapid-connect coupler 100 transitions to configuration B, as shown in Fig. 6.
  • rapid-connect coupler 100 is coupled to, for example, fueling receptacle 400 as illustrated in Fig. 4.
  • coupler 100 is configured to flow fluid to receptacle 400 in configuration B.
  • handles 130A and 130B rotate toward coupler head section 101.
  • the forward rotation of handles 130A and 130B rotates links 275, thus longitudinally translating probe assembly 215 from within housing barrel 255 into a coupled engagement with fueling receptacle 400.
  • the translation of probe assembly 215 causes reset cam 530 to translate forward to engage latch pawl 520.
  • reset cam 530 releases latch pawl 520 from its up position and rotates latch pawl 520 to its "down" position (shown in Fig. 6).
  • latch pawl 520 is biased to its down position by one or more of the release lever 501 and/or lever spring 502.
  • Latch pawl 520 may be released from its hard stop engagement with probe flange 290 via release lever 501.
  • the user may release latch pawl 520 after proper venting has been accomplished.
  • Fig. 8 illustrates rapid-connect coupler 100 following the release of the hard stop provided by latch pawl 520 engaging with probe flange 290.
  • Handles 130A and 130B may continue to occupy their configuration C positions.
  • a downward force on the opposing end of release lever 501 releases latch pawl 520 releases from the hard stop. More specifically, the downward force on the opposing end of release lever 501 causes the other end of release lever 501 to lift or rotate latch pawl 520 toward the catch 510.
  • the spring 502 may bias release lever 501 to the position shown in Fig.
  • the release lever 501 pivots about the attachment point between the spring 502 and the release lever 501.
  • Catch 510 is configured to provide sufficient upward holding force (e.g., frictional force) on latch pawl 520 in order to keep latch pawl 520 in the "up" position while the rapid-connect coupler is being agitated.
  • sufficient upward holding force e.g., frictional force
  • the risk of latch pawl 520 falling down and re-engaging with probe flange 290 to provide the hard stop as rapid-connect coupler 100 is being agitated back and forth may be reduced, or even eliminated.
  • the rapid-connect coupler 100 needs to be longitudinally agitated following the completion of a venting process when coupler 100 is in configuration C of Fig. 7.
  • the user may now apply release lever 501 to release the latch pawl 520 from the hard stop position into the "up" position shown in Fig. 8.
  • the user may longitudinally agitate the rapid-connect coupler 100 while catch 510 holds latch pawl 520 in the "up” position.
  • catch 510 is configured to keep latch pawl 520 in the "up" position.
  • tapered slot 910A and tapered slot 910B which are defined by tapered wall 920A and tapered wall 920B, respectively.
  • tapered slots 91 OA, 910B may be concave toward the external and internal portions of the ball cage 225.
  • Tapered slots 910A, 910B may be desirable because the tapered slots 910A, 910B tend to release ice more efficiently, which may form within the tapered slots 910A, 910B when cold temperatures are present (e.g., when using a cooled gas such as liquid natural gas or in cold environmental conditions).
  • the tapered walls 920A, 920B may be of various configurations and types of tapers, including linear tapers or curved tapers, and the entirety of the tapered slots 91 OA, 91 OB may or may not include a taper.
  • the balls 245 are made from a metal and sized for a dimensional interference fit inside the tapered slots 910.
  • the balls 245 are further sized to protrude from the slots 910 in the radial direction. More specifically, the sleeve 105 causes the balls 245 to radially protrude from an inner circumference of ball cage 225. When sleeve 105 does not cover slots 910, lip 420 causes the balls to radially protrude from an outer circumference of ball cage 225. In Fig. 9, ball 245B outwardly radially protrudes from outer circumference B of ball cage 225 to distance A. The outer most point of ball 245B now radially extends a distance A - B from ball cage 225. In Fig.
  • ball 245A inwardly radially protrudes from inner circumference D of ball cage 225 to a distance C.
  • the inner most point of ball 245A now radially extends a distance C - D from ball cage 225.
  • gravity may cause balls 245 to occupy the positions shown in Fig. 9.
  • the dimensional interference fit is too tight for gravity to radially translate the balls 245.

Abstract

L'invention concerne un coupleur à raccord rapide comprenant un boîtier, une sonde (215) configurée à des fins de translation à l'intérieur du boîtier, un ensemble formant poignée (130A) configuré pour amener la sonde (215) à effectuer une translation à l'intérieur du corps de boîtier, un ensemble d'arrêt configuré pour arrêter de manière sélective la translation de la sonde, l'ensemble d'arrêt comprenant un cliquet (520) configuré pour occuper à la fois une position active et une position inactive, dans lequel la position inactive arrête la translation de la sonde (215) ; un encliquetage (510) fixé sur le boîtier et configuré pour maintenir la sonde (215) dans la position inactive ; un levier (501) configuré pour venir se mettre en prise avec le cliquet (520) ; un ressort (502) fixé à la fois sur le boîtier et le levier (501) et configuré pour solliciter le cliquet (520) jusque sur la position inactive au moyen du levier (501) ; et une came (530) configurée pour séparer le cliquet (520) de l'encliquetage (510) et amener le cliquet (520) à occuper la position active.
PCT/US2016/029538 2015-04-27 2016-04-27 Coupleur à raccord rapide comportant un arrêt d'évacuation WO2016176312A1 (fr)

Priority Applications (4)

Application Number Priority Date Filing Date Title
EP16722473.2A EP3289269B1 (fr) 2015-04-27 2016-04-27 Coupleur à raccord rapide comportant un arrêt d'évacuation
CN201680025408.1A CN107548444B (zh) 2015-04-27 2016-04-27 具有排放止动的快速连接耦合器
ES16722473T ES2903105T3 (es) 2015-04-27 2016-04-27 Acoplador de conexión rápida con tope de ventilación
HK18106551.8A HK1247269B (zh) 2015-04-27 2018-05-21 具有排放止動的快速連接耦合器

Applications Claiming Priority (4)

Application Number Priority Date Filing Date Title
US201562153399P 2015-04-27 2015-04-27
US62/153,399 2015-04-27
US15/140,011 2016-04-27
US15/140,011 US9897239B2 (en) 2015-04-27 2016-04-27 Rapid-connect coupler with vent stop

Publications (1)

Publication Number Publication Date
WO2016176312A1 true WO2016176312A1 (fr) 2016-11-03

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Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/US2016/029538 WO2016176312A1 (fr) 2015-04-27 2016-04-27 Coupleur à raccord rapide comportant un arrêt d'évacuation

Country Status (6)

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US (2) US9897239B2 (fr)
EP (1) EP3289269B1 (fr)
CN (2) CN110594520B (fr)
ES (1) ES2903105T3 (fr)
HK (1) HK1247269B (fr)
WO (1) WO2016176312A1 (fr)

Families Citing this family (15)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP3289269B1 (fr) * 2015-04-27 2021-12-22 Engineered Controls International, LLC Coupleur à raccord rapide comportant un arrêt d'évacuation
WO2017096306A1 (fr) 2015-12-03 2017-06-08 Engineered Controls International, Llc Raccord utilisable et résistant aux fuites
CN108779896B (zh) 2015-12-03 2021-04-27 工程控制国际有限责任公司 低排放喷嘴和接收器
US10876636B2 (en) 2015-12-03 2020-12-29 Engineered Controls International, Llc Leak resistant and serviceable receptacle
EP3293524B1 (fr) * 2016-09-12 2021-06-09 Stratec SE Couplage fluidique
US10767799B2 (en) * 2017-01-17 2020-09-08 Opw-Engineered Systems, Inc. Vapor coupler
US11912213B2 (en) * 2018-05-01 2024-02-27 Thetford Bv Discharge device for vehicle wastewater management system
EP3793932A4 (fr) * 2018-05-17 2022-03-09 Ourip Pty Ltd Dispositif raccord
EP3572710B1 (fr) 2018-05-22 2021-11-17 Engineered Controls International, LLC Réceptacle remplaçable et résistant aux fuites
CN109163157B (zh) * 2018-11-09 2024-03-19 浙江爱乐石油设备制造有限公司 一种快速对接耦合连接器
WO2020206123A1 (fr) * 2019-04-05 2020-10-08 Engineered Controls International, Llc Raccord rapide et réceptacle ayant une caractéristique anti-rotation
CN110159856A (zh) * 2019-06-06 2019-08-23 浙江省机电设计研究院有限公司 一种自锁式快速接头
CN114364909A (zh) * 2019-09-09 2022-04-15 国际工程控制公司 低温流体的耦合喷嘴
DE102020205694A1 (de) * 2020-05-06 2021-11-11 Robert Bosch Gesellschaft mit beschränkter Haftung Schnellkuppler mit seitlichen Betätigungshebeln
EP4341622A1 (fr) * 2021-05-20 2024-03-27 Fastest, Inc. Outils et systèmes de service pour traiter un fluide à travers un orifice d'accès à un fluide

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5429155A (en) * 1993-05-19 1995-07-04 Moog Inc. Cryogenic fluid coupling
WO2003095883A1 (fr) * 2002-05-07 2003-11-20 J.C. Carter Japan K.K. Raccord pour fluide cryogenique
WO2012129340A2 (fr) * 2011-03-21 2012-09-27 Howard Konishi Coupleur à raccord rapide doté d'un arrêt d'évacuation
US20140261741A1 (en) * 2013-03-14 2014-09-18 Macro Technologies, Llc Rapid-connect coupler with vent-holes

Family Cites Families (151)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US430721A (en) 1890-06-24 Hose-coupling
US2070013A (en) 1935-04-29 1937-02-09 Min A Max Co Inc Lubricating apparatus
US2259137A (en) 1939-08-14 1941-10-14 Sr William C Iftiger Coupling
US2327714A (en) 1940-06-04 1943-08-24 Sr William C Iftiger Coupling
US2323099A (en) 1941-12-05 1943-06-29 Patten Walter Evans Tube fitting
US2388179A (en) 1943-02-06 1945-10-30 Prowd William Thomas Pipe coupling
US2434167A (en) 1945-05-23 1948-01-06 Ernest O Knoblauch Valved coupling
US2512320A (en) 1946-02-05 1950-06-20 Frederick C Fischer Valve
US2552543A (en) 1950-04-03 1951-05-15 Clarence E Earle Coupling
US2675829A (en) 1951-06-22 1954-04-20 Bendix Aviat Corp Quick-disconnect coupling with selectively operable valve
US2904351A (en) 1956-01-31 1959-09-15 Flight Refueling Inc Pipe-coupling devices
US2797110A (en) 1956-04-04 1957-06-25 Carl A Covington Ball detent coupling
US3069127A (en) 1957-12-12 1962-12-18 Flight Refueling Inc Pipe couplings
US3474827A (en) 1966-02-09 1969-10-28 Emco Wheaton Coupler and adapter and seal structure therefor
US3589673A (en) 1968-06-20 1971-06-29 Foster Mfg Co Inc Fluid line coupling
US3583667A (en) 1969-07-16 1971-06-08 William T Amneus Jr Quick-disconnect coupling
US3680591A (en) 1970-05-07 1972-08-01 Dempco Unique hydraulic coupler
US3710823A (en) 1971-01-25 1973-01-16 Dempco Hydraulic coupler with cam actuator
US3757836A (en) 1971-02-03 1973-09-11 Daido Kogyo K Ltd Quick-connect valve for use in filling gas cylinders
US3674051A (en) 1971-05-14 1972-07-04 Safe Way Hydraulics Hydraulic coupler
US3753442A (en) * 1971-11-01 1973-08-21 Technical Dev Co Monitoring device and method
US3897091A (en) 1972-06-08 1975-07-29 Dover Corp Dry-break coupler
US3809122A (en) 1972-11-02 1974-05-07 Allis Chalmers Hydraulic coupling
US3924654A (en) 1973-12-26 1975-12-09 Hughes Aircraft Co Quick disconnect tank coupler
US3913844A (en) 1974-03-13 1975-10-21 Graco Inc Safety spray gun trigger
US4124228A (en) 1977-03-24 1978-11-07 Kaiser Aerospace & Electronics Corporation Pressure-balanced fluid coupling
US4181150A (en) 1977-09-12 1980-01-01 Gould, Inc. Lever-type quick disconnect coupling
US4234161A (en) 1978-12-06 1980-11-18 Dover Corporation Linkage assembly for a coupler
US4366945A (en) 1978-12-20 1983-01-04 Abnox Ag Hose coupling with double lock
SE423834B (sv) 1979-02-08 1982-06-07 Lennart Gustaf Berg For tryckfluidumdledningar avsedd snabbkoppling
US4437647A (en) 1979-12-17 1984-03-20 Foster Manufacturing Company Quick connect-disconnect coupling for fluid lines
US4303098A (en) 1980-04-14 1981-12-01 Deere & Company Female coupler
NL8002687A (nl) 1980-05-09 1981-12-01 Tno Vulpistool, in het bijzonder voor lpg.
US4347870A (en) 1980-05-14 1982-09-07 Gould Inc. Lever-type quick disconnect coupling
US4398561A (en) 1981-03-27 1983-08-16 Imperial Clevite Inc. Quick disconnect coupling with locked valving
US4541457A (en) 1982-03-17 1985-09-17 Colder Products Company Two-way uncoupling valve assembly
DE3247784C1 (de) 1982-12-23 1984-06-14 Weh, Erwin, 7918 Illertissen Steckkupplung zur druckdichten Verbindung einer Druckleitung mit einer druckmittelbetaetigten Vorrichtung
US4552333A (en) 1984-01-27 1985-11-12 Oy Pajakanta Ab Bayonet catch for a line of pressurized medium
FR2559941B1 (fr) 1984-02-16 1986-07-04 Framatome Sa Reacteur nucleaire du type sous-modere
GB2157382B (en) * 1984-04-11 1987-06-10 Boc Group Plc Releasable pipe coupling
US4941557A (en) * 1984-09-05 1990-07-17 Dana Corporation Intermediate plate positioner means for a friction clutch assembly
CA1288454C (fr) 1985-05-20 1991-09-03 Erwin Weh Raccord obturateur assurant l'etancheite sous pression
US5127428A (en) 1985-12-24 1992-07-07 Dover Corporation Poppet valve assembly and method of making same
US4676269A (en) 1986-03-07 1987-06-30 Tuthill Corporation Connector assembly
US4726390A (en) 1986-03-26 1988-02-23 Waltec, Inc. Hose bibb vacuum breaker
US4799512A (en) 1987-11-12 1989-01-24 Tuthill Corporation Coupling assembly
US4884830A (en) 1988-01-19 1989-12-05 Fastest, Inc. Quick connect coupling device
FR2640721B1 (fr) 1988-12-19 1991-02-01 Legris Sa Coupleur automatique pour circuit de fluide sous pression
US4881573A (en) 1989-01-31 1989-11-21 Deere & Company Female hydraulic coupler with push-connect and lever disconnect
US5080132A (en) 1989-04-06 1992-01-14 Kent-Moore Corporation Refrigeration equipment service apparatus with quick-disconnect couplings
US5046523A (en) 1989-06-02 1991-09-10 George Horhota Lock core service valve
US5074332A (en) 1990-08-16 1991-12-24 Production Control Units, Inc. Hose coupling unit for refrigerant system
US5139049A (en) 1990-11-15 1992-08-18 Aeroquip Corporation Refrigeration system service adapter
US5129621A (en) 1990-11-28 1992-07-14 Aeroquip Corporation Dry break coupling
US5092364A (en) 1991-06-20 1992-03-03 Perfecting Services, Inc. Quick-action fluid coupling
US5161568A (en) 1991-08-14 1992-11-10 Keen Manufacturing, Inc. Safety lockout valve and coupling
US5205317A (en) 1991-09-12 1993-04-27 Delta Industrial Valves, Inc. Valve assembly
DE59103130D1 (de) 1991-10-08 1994-11-03 Klein Rectus App Selbstentlüftende Schnellverschlusskupplung für Druckgas-, insbesondere Druckluftleitungen.
US5211197A (en) 1992-01-03 1993-05-18 Aeroquip Corporation Quick disconnect liquid line coupling with volumertric expansion couping element
DE9204384U1 (fr) 1992-03-31 1992-07-09 Weh Gmbh, Verbindungstechnik, 7918 Illertissen, De
US5289850A (en) * 1992-06-08 1994-03-01 Tuthill Corporation Fluid coupling having vent valve assembly
US5404909A (en) 1992-06-11 1995-04-11 Parker-Hannifin Corporation Coupling device
SE470452B (sv) 1992-10-16 1994-04-11 Bjoern Engdahl Slangkoppling för tryckluft med don för tryckavlastning vid isärkoppling
US5265844A (en) 1992-11-02 1993-11-30 Westfall Randell W Receptacle valve assembly and seal
US5301723A (en) 1992-11-06 1994-04-12 Hydra Rig, Inc. Apparatus and method of preventing ice accumulation on coupling valves for cryogenic fluids
US5255714A (en) 1992-11-13 1993-10-26 Perfecting Services, Inc. Quick-action fluid coupling
AU5846194A (en) * 1992-12-07 1994-07-04 Parker-Hannifin Corporation Push-to-connect coupler with interlocking three-way valve
CN2170429Y (zh) * 1993-03-19 1994-06-29 俞耀勇 快速接头
US5293902A (en) 1993-06-07 1994-03-15 Tif Instruments, Inc. Quick-disconnect fluid coupling
US5339862A (en) 1993-07-29 1994-08-23 Aeroquip Corporation Refrigeration system service adapter
US5439258A (en) 1993-08-17 1995-08-08 Production Control Units, Inc. Tube coupling unit
SE501787C2 (sv) 1993-09-20 1995-05-15 Aga Ab Kopplingsanordning
US5363879A (en) 1994-02-15 1994-11-15 Liquid Carbonic Corporation Cryogenic coupling
FR2719105B1 (fr) 1994-04-21 1996-05-31 Yto Coupleur rapide pour conduit sous pression à désaccouplement contrôlé.
DE9409956U1 (de) 1994-06-20 1994-09-08 Weh Verbindungstechnik Sicherheitsverschluß, insbesondere für Fahrzeug-Gastanks
US5445358A (en) 1994-12-16 1995-08-29 Parker-Hannifin Corporation Exhaust type quick action coupler
FR2729454A1 (fr) 1995-01-16 1996-07-19 Staubli Sa Ets Raccord rapide de securite pour la jonction amovible de canalisations
DE29500808U1 (de) 1995-01-19 1995-03-16 Weh Verbindungstechnik Schnellanschlußkupplung
US5564471A (en) 1995-01-23 1996-10-15 Dover Corporation Fuel hose breakaway unit
US5580099A (en) 1995-04-03 1996-12-03 Eaton; Edward M. Quick connect/disconnect coupling
US5507530A (en) 1995-05-08 1996-04-16 Soo Tractor Sweeprake Company Plural male and female fluid coupler connecting mechanism and method
US5799987A (en) 1995-06-05 1998-09-01 Sampson; Richard K. Fluid fitting coupling system
SE506302C2 (sv) 1995-07-14 1997-12-01 Bjoern Engdahl Slangkoppling, exempelvis för tryckluftsverktyg, med don för tryckavlastning vid isärkoppling
US5671777A (en) 1995-07-17 1997-09-30 Dover Corporation Couplings for joining fluid conduits
FR2740197B1 (fr) 1995-10-20 1997-12-26 Yto Coupleur rapide a desaccouplement a deux phases
US5577706A (en) 1995-10-25 1996-11-26 King; Robert J. Water faucet with automatic shut-off mechanism for water conservation
US5603353A (en) 1995-11-17 1997-02-18 Essman Screw Products, Inc. Quick disconnect coupling
US5709243A (en) 1995-11-20 1998-01-20 Aeroquip Corporation Low spill female coupling
DE29603734U1 (de) 1996-02-29 1997-04-03 Weh Verbindungstechnik Halterungseinrichtung
SE506405C2 (sv) 1996-03-22 1997-12-15 Nyberg Bo Erik Snabbkoppling med tryckavlastning för säkert lösgörande
SE506346C2 (sv) 1996-04-03 1997-12-08 Nyberg Bo Erik Snabbkoppling för slangar eller ledningar för tryckmedier
DE29612942U1 (de) 1996-07-30 1997-09-04 Weh Verbindungstechnik Schnellanschlußkupplung
US6161578A (en) 1996-10-09 2000-12-19 Colder Products Company Low spill high flow quick coupling valve assembly
IT1290559B1 (it) 1997-02-28 1998-12-10 Omba S R L Meccanismo per unire parti valvolari
US5788443A (en) 1997-03-13 1998-08-04 Thread Technology, Inc. Male coupling with movable threaded segments
EP0983461B1 (fr) 1997-05-22 2003-05-02 Erwin Weh Accouplement a connexion rapide
CN2293698Y (zh) 1997-06-18 1998-10-07 吴金堂 快速接头装置
DE19882564C2 (de) 1997-07-28 2002-02-28 Nitto Kohki Co Rohrkupplung
US5884648A (en) 1997-08-27 1999-03-23 Scholle Corporation Coupling valve apparatus and method
US5896889A (en) 1997-10-24 1999-04-27 Menard; Orville R. Quick-set hydraulic coupler
JP3319712B2 (ja) 1997-11-14 2002-09-03 日東工器株式会社 管継手の雌部材
US6039303A (en) 1997-11-25 2000-03-21 Fastest, Inc. High pressure fluidline connector
US5967491A (en) 1997-12-01 1999-10-19 Parker-Hannifin Corporation Anti-leak quick action coupler
US5950679A (en) 1998-02-10 1999-09-14 Fastest, Inc. High pressure plug coupling
US6343630B1 (en) 1998-05-22 2002-02-05 Delaware Capital Formation, Inc. High pressure filling nozzle
US6073974A (en) 1998-06-04 2000-06-13 Fastest, Inc. High pressure coupling
US6056010A (en) 1998-07-23 2000-05-02 Aeroquip Corporation Anti-check low spill fluid coupling
FR2786848B1 (fr) 1998-12-02 2001-02-09 Legris Sa Coupleur a billes
FR2786849B1 (fr) 1998-12-03 2001-01-26 Staubli Sa Ets Raccord rapide de securite pour la jonction amovible de canalisations
JP3443028B2 (ja) 1999-03-04 2003-09-02 日東工器株式会社 雌ねじ用管継手
DE19911208A1 (de) 1999-03-13 2000-09-14 Walther Carl Kurt Gmbh Steckkupplung zur Verbindung von Rohrleitungen, Schläuchen oder dergleichen
DE19914318C2 (de) 1999-03-30 2002-05-29 Gustav Schumacher Vorrichtung zum Kuppeln von hydraulischen Leitungen
US6155294A (en) 1999-04-02 2000-12-05 Emco Wheaton Fleet Fueling, Corp. Dry disconnect coupling with improved poppet seal
WO2001004534A1 (fr) 1999-07-09 2001-01-18 Gary Clancy Systeme de raccord pour fluide
US6382251B1 (en) 2000-03-29 2002-05-07 Snap-Tite Technologies, Inc. Coupling with male half having internal pressure relief
US7073773B2 (en) 2001-03-27 2006-07-11 Invacare Corporation Rapid connection coupling
US6705550B2 (en) 2001-05-22 2004-03-16 Scot P. Bell Closed circuit fuel nozzle
FR2831940B1 (fr) 2001-11-06 2006-09-29 Staubli Sa Ets Raccord rapide pour la jonction amovible de deux canalisations
US6637460B2 (en) 2002-01-28 2003-10-28 Eaton Corporation Dual function service coupling
FR2835585B1 (fr) 2002-02-04 2004-03-05 Staubli Sa Ets Raccord rapide pour la jonction amovible de deux canalisations
FR2837487B1 (fr) 2002-03-19 2004-06-11 Staubli Sa Ets Pistolet a fonctionnement securise et installation de remplissage comprenant un tel pistolet
JP3871622B2 (ja) 2002-07-18 2007-01-24 日東工器株式会社 緊急離脱用管継手
US6945477B2 (en) 2002-09-04 2005-09-20 Parker-Hannifin Corporation Cryogenic coupling device
FR2847329B1 (fr) 2002-11-19 2007-01-05 Staubli Sa Ets Raccord rapide pour la jonction amovible de deux canalisations
FR2847330A1 (fr) 2002-11-19 2004-05-21 Staubli Sa Ets Raccord rapide pour la jonction amovible de deux canalisations
US6840276B2 (en) * 2003-01-29 2005-01-11 Snap-Tite Technologies, Inc. Ventable manifold
US6776187B1 (en) 2003-03-06 2004-08-17 Parker-Hannifin Corporation Quick coupling with pressure assist piston
FR2861382B1 (fr) 2003-10-22 2005-12-30 Staubli Sa Ets Dispositif de remplissage de reservoir de vehicule en carburant liquide
FR2865259B1 (fr) 2004-01-20 2006-04-21 Staubli Sa Ets Raccord rapide et procede de desacouplement des elements male et femelle d'un tel raccord
US7469718B2 (en) 2004-07-27 2008-12-30 Parker-Hannifin Corporation Quick disconnect cryogenic coupler
JP4564325B2 (ja) 2004-10-15 2010-10-20 日東工器株式会社 管継手の雌型継手
JP4520821B2 (ja) 2004-10-29 2010-08-11 日東工器株式会社 管継手及び雄型継手
FR2882803B1 (fr) 2005-03-02 2007-04-20 Staubli Faverges Sca Raccord rapide pour la jonction de deux canalisations d'acheminement d'un gaz sous pression
US7841580B2 (en) 2005-04-18 2010-11-30 Macro Technologies, Inc. Pressurized fluid coupler with anti-recoil feature and methods
CN101253358B (zh) * 2005-07-26 2012-04-18 考尔得产品公司 具有包覆模制密封结构的耦合器组件及其形成方法
US8056581B2 (en) * 2006-04-06 2011-11-15 Fastest, Inc. Latching connectors
US7568737B2 (en) 2006-09-22 2009-08-04 Eaton Corporation Male coupling for connecting to female threaded coupling
US20080128034A1 (en) 2006-12-01 2008-06-05 Dixon Valve And Coupling Company Handle Lever Locking Mechanism for Dry Disconnect Coupler
US7793914B2 (en) 2007-02-06 2010-09-14 Fastest, Inc. Quick connect connector with tolerance accommodation
ITPD20070181A1 (it) 2007-05-23 2008-11-24 Ohg A N I S P A Rubinetto ad innesto rapido perfezionato, particolarmente per fluidi in pressione
US20090165870A1 (en) 2007-09-28 2009-07-02 Macro Technologies, Inc. Manifold assembly
US20090140519A1 (en) 2007-11-30 2009-06-04 Caterpillar Inc. Quick connect tubular coupling
DE202007018142U1 (de) 2007-12-22 2009-03-05 Weh, Erwin Kupplung, insbesondere für LNG
CA2626158C (fr) 2008-02-14 2015-07-21 Sledz Industries Inc. Appareil de ligne de charge
FR2939863B1 (fr) 2008-12-12 2011-03-04 Legris Sa Dispositif de raccordement epuipe de moyens instantane ou quasi-instantane
FR2950949B1 (fr) * 2009-10-01 2012-06-22 Staubli Sa Ets Element femelle de raccord rapide et raccord rapide incorporant un tel element
PT2354626E (pt) 2010-01-29 2013-10-07 Elaflex Hiby Tanktechnik Gmbh & Co Unidade de pistola de abastecimento de combustível composta por pistola de base e guarnição de interface e sistema modular composto por pistola de base e uma série de guarnições de interface
US9115838B2 (en) 2010-08-10 2015-08-25 Engineered Controls International, Llc Rapid-connect coupler
AU2012325814A1 (en) 2011-10-19 2014-06-05 Robert Charles Cooley Grease delivery receiver and nozzle having pressurization lockout and bleed-down capture
CN102537561A (zh) * 2012-02-07 2012-07-04 中国人民解放军总后勤部油料研究所 软管快速接头
EP3289269B1 (fr) * 2015-04-27 2021-12-22 Engineered Controls International, LLC Coupleur à raccord rapide comportant un arrêt d'évacuation

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5429155A (en) * 1993-05-19 1995-07-04 Moog Inc. Cryogenic fluid coupling
WO2003095883A1 (fr) * 2002-05-07 2003-11-20 J.C. Carter Japan K.K. Raccord pour fluide cryogenique
WO2012129340A2 (fr) * 2011-03-21 2012-09-27 Howard Konishi Coupleur à raccord rapide doté d'un arrêt d'évacuation
US9194524B2 (en) 2011-03-21 2015-11-24 Engineered Controls International, Llc Rapid-connect coupler with vent-stop
US20140261741A1 (en) * 2013-03-14 2014-09-18 Macro Technologies, Llc Rapid-connect coupler with vent-holes

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US10208877B2 (en) 2019-02-19
US20180187812A1 (en) 2018-07-05
CN107548444A (zh) 2018-01-05
HK1247269B (zh) 2020-06-26
US9897239B2 (en) 2018-02-20
ES2903105T3 (es) 2022-03-31
CN110594520A (zh) 2019-12-20
US20160312939A1 (en) 2016-10-27
EP3289269B1 (fr) 2021-12-22
CN110594520B (zh) 2021-03-30
EP3289269A1 (fr) 2018-03-07
CN107548444B (zh) 2019-09-24

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